Current stress is usually high for conventional switched-capacitor converter circuits, because of short-circuiting when charging up the capacitors. In this paper, two zero-current switching switched-capacitor resonant step-down converter families are presented which can improve the current stress problem. They are able to provide 1/2 to 1/n, and -1 to -1/n conversion ratios respectively by using only two switches. Principles of operation, computer simulation and experimental results of the proposed converters are presented. The measured efficiency is high and all parts of the circuits are under zero-current switching conditions.Department of Electrical Engineerin
Author name used in this publication: K. W. E. ChengAuthor name used in this publication: K. K. LawA...
This paper is to present a new generation of the switched capacitor converters. These new circuits h...
Abstract Multi-phase implementation in the quasi resonant (QR) zero current switching (ZCS) switched...
Conventional switched-capacitor converter circuits have a high current stress because of the short c...
A switched-capacitor-based step-up resonant converter is proposed. The voltage conversion of the con...
Inherent disadvantages of conventional switched-capacitor converters (SCC) are their discrete conver...
xxiv, 105 p. : ill. ; 30 cm.PolyU Library Call No.: [THS] LG51 .H577M EE 2005 LawIn recent years, po...
Absimd- Power converters are commonly based on the Switched Mode techniques which use pulsewidth mod...
A family of dual-phase-combined resonant switched-capacitor (SC) converters with a similar structure...
Author name used in this publication: Y. P. B. YeungAuthor name used in this publication: K. W. E. C...
This paper presents some novel circuits of soft-switched quasi-resonant DC/DC boost and flyback conv...
This paper presents a novel concept of a high-voltage-gain DC-DC converter. The converter is made up...
In this article, a quasi-switched boost converter based on the switched-capacitor technique with hig...
Novel step-up DC/DC converter is introduced in this paper. This converter is realized with adding th...
This paper presents the concept and results of a novel resonant DC-DC converter which achieves high ...
Author name used in this publication: K. W. E. ChengAuthor name used in this publication: K. K. LawA...
This paper is to present a new generation of the switched capacitor converters. These new circuits h...
Abstract Multi-phase implementation in the quasi resonant (QR) zero current switching (ZCS) switched...
Conventional switched-capacitor converter circuits have a high current stress because of the short c...
A switched-capacitor-based step-up resonant converter is proposed. The voltage conversion of the con...
Inherent disadvantages of conventional switched-capacitor converters (SCC) are their discrete conver...
xxiv, 105 p. : ill. ; 30 cm.PolyU Library Call No.: [THS] LG51 .H577M EE 2005 LawIn recent years, po...
Absimd- Power converters are commonly based on the Switched Mode techniques which use pulsewidth mod...
A family of dual-phase-combined resonant switched-capacitor (SC) converters with a similar structure...
Author name used in this publication: Y. P. B. YeungAuthor name used in this publication: K. W. E. C...
This paper presents some novel circuits of soft-switched quasi-resonant DC/DC boost and flyback conv...
This paper presents a novel concept of a high-voltage-gain DC-DC converter. The converter is made up...
In this article, a quasi-switched boost converter based on the switched-capacitor technique with hig...
Novel step-up DC/DC converter is introduced in this paper. This converter is realized with adding th...
This paper presents the concept and results of a novel resonant DC-DC converter which achieves high ...
Author name used in this publication: K. W. E. ChengAuthor name used in this publication: K. K. LawA...
This paper is to present a new generation of the switched capacitor converters. These new circuits h...
Abstract Multi-phase implementation in the quasi resonant (QR) zero current switching (ZCS) switched...